Development and validation of an integrated mechatronic apparatus for measurement of friction coefficients of agricultural products

An integrated mechatronic apparatus was developed based on tilting plate method in order to precisely measure static friction coefficient (SFC) and dynamic friction coefficient (DFC) of agricultural products. The apparatus consisted of two main parts (mechanical and electrical parts). The main eleme...

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Main Authors: S.M. Shafaei, A. Nourmohamadi-Moghadami, S. Kamgar, M. Eghtesad
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2020-03-01
Series:Information Processing in Agriculture
Online Access:http://www.sciencedirect.com/science/article/pii/S2214317318304694
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spelling doaj-5aa93a665b034e16b588e1b6e7c3cf4a2021-04-02T12:04:12ZengKeAi Communications Co., Ltd.Information Processing in Agriculture2214-31732020-03-017193108Development and validation of an integrated mechatronic apparatus for measurement of friction coefficients of agricultural productsS.M. Shafaei0A. Nourmohamadi-Moghadami1S. Kamgar2M. Eghtesad3Department of Biosystems Engineering, School of Agriculture, Shiraz University, Shiraz 71441-65186, IranDepartment of Biosystems Engineering, School of Agriculture, Shiraz University, Shiraz 71441-65186, Iran; Corresponding author.Department of Biosystems Engineering, School of Agriculture, Shiraz University, Shiraz 71441-65186, IranDepartment of Solid Mechanics Engineering, School of Mechanical Engineering, Shiraz University, Shiraz 71348-51154, IranAn integrated mechatronic apparatus was developed based on tilting plate method in order to precisely measure static friction coefficient (SFC) and dynamic friction coefficient (DFC) of agricultural products. The apparatus consisted of two main parts (mechanical and electrical parts). The main element of mechanical part was rotary container. Meanwhile, the electrical part included control, display, goniometer, level controller, rotational power supply, and infrared unit. The apparatus was initially simulated in simulation environment and practically calibrated to achieve high precision measurements. To appraise performance of the apparatus, the SFC and DFC of three grains were measured on five contact surfaces. Experiments were also conducted by means of a typical apparatus operating based on puling force method. Some statistical descriptor parameters such as mean absolute percentage error (MAPE), average of absolute values of measurement errors (AAVME), maximum of absolute values of measurement errors (MAVME), and correlation coefficient were used to compare accuracy of the apparatus with the typical one. The acceptable AAVME (<10%), MAVME (<10%), MAPE (<5%), and correlation coefficient (>0.9) indicated high accuracy, stability, and efficiency of the apparatus for automatic measurements of the SFC and DFC. From practical point of view, the mechatronic apparatus would be a beneficial tool for experimental, educational, demonstrational, and research works. Keywords: Static friction coefficient, Dynamic friction coefficient, Physical property, Friction forcehttp://www.sciencedirect.com/science/article/pii/S2214317318304694
collection DOAJ
language English
format Article
sources DOAJ
author S.M. Shafaei
A. Nourmohamadi-Moghadami
S. Kamgar
M. Eghtesad
spellingShingle S.M. Shafaei
A. Nourmohamadi-Moghadami
S. Kamgar
M. Eghtesad
Development and validation of an integrated mechatronic apparatus for measurement of friction coefficients of agricultural products
Information Processing in Agriculture
author_facet S.M. Shafaei
A. Nourmohamadi-Moghadami
S. Kamgar
M. Eghtesad
author_sort S.M. Shafaei
title Development and validation of an integrated mechatronic apparatus for measurement of friction coefficients of agricultural products
title_short Development and validation of an integrated mechatronic apparatus for measurement of friction coefficients of agricultural products
title_full Development and validation of an integrated mechatronic apparatus for measurement of friction coefficients of agricultural products
title_fullStr Development and validation of an integrated mechatronic apparatus for measurement of friction coefficients of agricultural products
title_full_unstemmed Development and validation of an integrated mechatronic apparatus for measurement of friction coefficients of agricultural products
title_sort development and validation of an integrated mechatronic apparatus for measurement of friction coefficients of agricultural products
publisher KeAi Communications Co., Ltd.
series Information Processing in Agriculture
issn 2214-3173
publishDate 2020-03-01
description An integrated mechatronic apparatus was developed based on tilting plate method in order to precisely measure static friction coefficient (SFC) and dynamic friction coefficient (DFC) of agricultural products. The apparatus consisted of two main parts (mechanical and electrical parts). The main element of mechanical part was rotary container. Meanwhile, the electrical part included control, display, goniometer, level controller, rotational power supply, and infrared unit. The apparatus was initially simulated in simulation environment and practically calibrated to achieve high precision measurements. To appraise performance of the apparatus, the SFC and DFC of three grains were measured on five contact surfaces. Experiments were also conducted by means of a typical apparatus operating based on puling force method. Some statistical descriptor parameters such as mean absolute percentage error (MAPE), average of absolute values of measurement errors (AAVME), maximum of absolute values of measurement errors (MAVME), and correlation coefficient were used to compare accuracy of the apparatus with the typical one. The acceptable AAVME (<10%), MAVME (<10%), MAPE (<5%), and correlation coefficient (>0.9) indicated high accuracy, stability, and efficiency of the apparatus for automatic measurements of the SFC and DFC. From practical point of view, the mechatronic apparatus would be a beneficial tool for experimental, educational, demonstrational, and research works. Keywords: Static friction coefficient, Dynamic friction coefficient, Physical property, Friction force
url http://www.sciencedirect.com/science/article/pii/S2214317318304694
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